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玉米早花自发突变的定位揭示了8号染色体上两个连锁QTL的等位基因系列差异。

Mapping of a spontaneous mutation for early flowering time in maize highlights contrasting allelic series at two-linked QTL on chromosome 8.

作者信息

Chardon Fabien, Hourcade Delphine, Combes Valérie, Charcosset Alain

机构信息

UMR de génétique végétale, 91190 Gif-sur-Yvette, France.

出版信息

Theor Appl Genet. 2005 Dec;112(1):1-11. doi: 10.1007/s00122-005-0050-z. Epub 2005 Oct 22.

Abstract

Only a few mutations affecting flowering time have been detected in maize. We analyzed a spontaneous early mutation, vgt-f7p, which appeared during production of the inbred line F7. This mutation shortens the time from planting to flowering by about 100 growing degree days (GDD), and reduces the number of nodes. It therefore seems to affect the timing of meristem differentiation from a vegetative to a reproductive state. It was mapped to a 6 cM confidence interval on chromosome 8, using a QTL mapping approach. QTL analysis of a mapping population generated by crossing the mutant F7 line (F7p) and the Gaspé flint population showed that vgt-f7p is probably allelic to vgt1, a QTL described in previous studies, and affects earliness more strongly than the Gaspé allele at vgt1. Global analysis of the QTL in the region suggested that there may be two consensus QTL, vgt1 and vgt2. These two QTL have contrasting allelic effects: rare alleles conferring extremely early flowering at vgt1 vs. greater diversity and milder effects at locus vgt2. Finally, detailed syntenic analysis showed that the vgt1 region displays a highly conserved duplicated region on chromosome 6, which also plays an important role in maize flowering time variation. The cloning of vgt1 should, therefore, also facilitate the analysis of the molecular basis of variation due to this second region.

摘要

在玉米中仅检测到少数影响开花时间的突变。我们分析了一个自发的早期突变vgt-f7p,它出现在自交系F7的培育过程中。该突变使从种植到开花的时间缩短了约100个生长度日(GDD),并减少了节数。因此,它似乎影响了分生组织从营养状态向生殖状态转变的时间。利用QTL定位方法,将其定位到8号染色体上一个6 cM的置信区间内。对由突变体F7品系(F7p)与加斯佩燧石群体杂交产生的定位群体进行QTL分析表明,vgt-f7p可能与先前研究中描述的QTL vgt1等位,并且比vgt1位点的加斯佩等位基因对早熟的影响更强。对该区域QTL的全局分析表明,可能存在两个共有QTL,即vgt1和vgt2。这两个QTL具有相反的等位基因效应:vgt1位点上导致极早熟的稀有等位基因,而vgt2位点上具有更多样性且效应较温和。最后,详细的共线性分析表明,vgt1区域在6号染色体上显示出一个高度保守的重复区域,该区域在玉米开花时间变异中也起着重要作用。因此,vgt1的克隆也应有助于分析由于该第二个区域导致的变异的分子基础。

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